US8557927B2 - Comb-shaped graft copolymers and methods of manufacturing the same - Google Patents
Comb-shaped graft copolymers and methods of manufacturing the same Download PDFInfo
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- US8557927B2 US8557927B2 US13/466,231 US201213466231A US8557927B2 US 8557927 B2 US8557927 B2 US 8557927B2 US 201213466231 A US201213466231 A US 201213466231A US 8557927 B2 US8557927 B2 US 8557927B2
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- comb
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- free radical
- shaped graft
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- LZYKVXJTXXNUEK-NOYMIXLRSA-N CC(C)(C)N1C2=C(C=CC=C2)/C(=N/C2=CC=CC=C2)C1(C1=CC=CC=C1)C(C)(C)C.CC(C)(C)N1C2=C(C=CC=C2)/C(=N/C2=CC=CC=C2)C1(CC1=CC=CC=C1)C1=CC=CC=C1.CC(C)C1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C.CCCC1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C.CCCCC1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C Chemical compound CC(C)(C)N1C2=C(C=CC=C2)/C(=N/C2=CC=CC=C2)C1(C1=CC=CC=C1)C(C)(C)C.CC(C)(C)N1C2=C(C=CC=C2)/C(=N/C2=CC=CC=C2)C1(CC1=CC=CC=C1)C1=CC=CC=C1.CC(C)C1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C.CCCC1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C.CCCCC1(C2=CC=CC=C2)/C(=N\C2=CC=CC=C2)C2=C(C=CC=C2)N1C(C)(C)C LZYKVXJTXXNUEK-NOYMIXLRSA-N 0.000 description 1
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- QYTDEUPAUMOIOP-UHFFFAOYSA-N TEMPO Chemical compound CC1(C)CCCC(C)(C)N1[O] QYTDEUPAUMOIOP-UHFFFAOYSA-N 0.000 description 1
- CQEYYJKEWSMYFG-UHFFFAOYSA-N butyl acrylate Chemical compound CCCCOC(=O)C=C CQEYYJKEWSMYFG-UHFFFAOYSA-N 0.000 description 1
- 238000011088 calibration curve Methods 0.000 description 1
- 229910001873 dinitrogen Inorganic materials 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000001914 filtration Methods 0.000 description 1
- 239000011521 glass Substances 0.000 description 1
- 239000012263 liquid product Substances 0.000 description 1
- 125000001997 phenyl group Chemical group [H]C1=C([H])C([H])=C(*)C([H])=C1[H] 0.000 description 1
- 230000000704 physical effect Effects 0.000 description 1
- 229920001603 poly (alkyl acrylates) Polymers 0.000 description 1
- 229920000642 polymer Polymers 0.000 description 1
- 238000010526 radical polymerization reaction Methods 0.000 description 1
- 125000001981 tert-butyldimethylsilyl group Chemical group [H]C([H])([H])[Si]([H])(C([H])([H])[H])[*]C(C([H])([H])[H])(C([H])([H])[H])C([H])([H])[H] 0.000 description 1
- 239000003643 water by type Substances 0.000 description 1
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F212/00—Copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by an aromatic carbocyclic ring
- C08F212/02—Monomers containing only one unsaturated aliphatic radical
- C08F212/04—Monomers containing only one unsaturated aliphatic radical containing one ring
- C08F212/06—Hydrocarbons
- C08F212/08—Styrene
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F293/00—Macromolecular compounds obtained by polymerisation on to a macromolecule having groups capable of inducing the formation of new polymer chains bound exclusively at one or both ends of the starting macromolecule
- C08F293/005—Macromolecular compounds obtained by polymerisation on to a macromolecule having groups capable of inducing the formation of new polymer chains bound exclusively at one or both ends of the starting macromolecule using free radical "living" or "controlled" polymerisation, e.g. using a complexing agent
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F220/00—Copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and only one being terminated by only one carboxyl radical or a salt, anhydride ester, amide, imide or nitrile thereof
- C08F220/02—Monocarboxylic acids having less than ten carbon atoms; Derivatives thereof
- C08F220/10—Esters
- C08F220/12—Esters of monohydric alcohols or phenols
- C08F220/14—Methyl esters, e.g. methyl (meth)acrylate
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F220/00—Copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and only one being terminated by only one carboxyl radical or a salt, anhydride ester, amide, imide or nitrile thereof
- C08F220/02—Monocarboxylic acids having less than ten carbon atoms; Derivatives thereof
- C08F220/10—Esters
- C08F220/12—Esters of monohydric alcohols or phenols
- C08F220/16—Esters of monohydric alcohols or phenols of phenols or of alcohols containing two or more carbon atoms
- C08F220/18—Esters of monohydric alcohols or phenols of phenols or of alcohols containing two or more carbon atoms with acrylic or methacrylic acids
- C08F220/1804—C4-(meth)acrylate, e.g. butyl (meth)acrylate, isobutyl (meth)acrylate or tert-butyl (meth)acrylate
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F2438/00—Living radical polymerisation
- C08F2438/02—Stable Free Radical Polymerisation [SFRP]; Nitroxide Mediated Polymerisation [NMP] for, e.g. using 2,2,6,6-tetramethylpiperidine-1-oxyl [TEMPO]
Definitions
- the technical field relates to a comb-shaped graft copolymer and methods of manufacturing the same.
- a comb-shaped graft polymer for example, acrylate polymer
- having excellent physical properties such as impact resistance, thermal resistance, and toughness
- the comb-shaped graft polymer can be synthesized by many ways.
- One embodiment provides a comb-shaped graft copolymer, having a formula as below:
- R 2 is hydrogen or a methyl group
- R 3 is an ester group, an alkyl ester group, an aryl group, or a heteroaryl group
- x is a repeating number of about 10 to 10 6
- y is a repeating number of about 10 to 10 3
- z is a repeating number of about 10 to 10 5 .
- One embodiment of the disclosure provides a method of forming a comb-shaped graft copolymer, comprising: heating a linear poly(methyl methacrylate), a peroxide free radical initiator, and a nitro-oxy compound to form a free radical macroinitiator; and heating the free radical macroinitiator and a monomer having a carbon-carbon double bond to form a comb-shaped graft copolymer; wherein the linear poly(methyl methacrylate) has a formula as below:
- R 2 is hydrogen or a methyl group
- R 3 is an ester group, an alkyl ester group, an aryl group, or a heteroaryl group
- x is a repeating number of about 10 to 10 6
- y is a repeating number of about 10 to 10 3
- z is a repeating number of about 10 to 10 5 .
- the comb-shaped graft copolymer is formed as follows. First, a linear poly(methyl methacrylate) (PMMA, see Formula 1), a peroxide free radical initiator, and a nitro-oxy compound are heated for reacting to form a free radical macroinitiator (see Formula 2), as shown in Formula 3.
- PMMA linear poly(methyl methacrylate)
- a peroxide free radical initiator a peroxide free radical initiator
- a nitro-oxy compound see Formula 2
- x is a repeating number of about 10 to 10 6 .
- x is a repeating number of about 10 to 10 6
- y is a repeating number of about 10 to 10 3 .
- the reaction in Formula 3 is performed at a temperature of about 80° C. to 110° C., or about 90° C. to 100° C.
- the peroxide free radical initiator is broken by heat to form free radicals, and the free radicals react with part of the methyl groups of the linear PMMA to form CH 2 free radicals. The CH 2 free radical further reacts with the nitro-oxy compound to form the free radical macroinitiator.
- R 1 depends on the nitro-oxy compound and is any one of Formulae 7-1 to 7-40.
- TBS is a tributylsilanoxyethyl group.
- TBDMS is a t-butyldimethylsilyl group.
- TMS is a trimethylsilanoxyethyl group.
- the peroxide free radical initiator includes di-t-butyl peroxide, t-butyl peroxybenzoate, or di-t-butyl peroxyoxalate.
- the free radicals from the broken peroxide free radical initiator may react with the repeating unit in any position in the PMMA, such that the repeating units corresponding to the repeating number x-y (not reacting with the free radicals) and the repeating units corresponding to the repeating number y (reacting with the free radicals) may compose a random copolymer as shown in Formula 3.
- the free radical macroinitiator (see Formula 2) and a monomer having a carbon-carbon double bond (see Formula 4) are then heated for reacting to form a comb-shaped graft copolymer (See Formula 5), as shown in Formula 6.
- R 2 is hydrogen or a methyl group
- R 3 is an ester group, an alkyl ester group, an aryl group (e.g. a phenyl group), or a heteroaryl group.
- z is a repeating number of about 10 to 10 5 .
- the terminal C—O bond of the side chain will be broken to form a new radical to polymerize with the monomer having the carbon-carbon double bond. After the monomer having the carbon-carbon double bond is polymerized to form the side chain polymer, the terminal free radical will be combined with the nitro-oxy compound again.
- the terminal of the side chain maintains its activity in the comb-shaped graft copolymer product.
- the comb-shaped graft copolymer product may further polymerize with a newly added monomer having a carbon-carbon double bond. It should be understood that if only one monomer having the carbon-carbon double bond is adopted, the repeating unit corresponding to the repeating number z will be the same, such that the side chain polymer with a nitro-oxy compound grafted on the terminal thereof should be a homopolymer.
- the repeating unit corresponding to the repeating number z will be a random copolymer copolymerized of the different monomers. If a first monomer having a carbon-carbon double bond is added to the free radical macroinitiator, and a second monomer having a carbon-carbon double bond is then added thereto after completely consuming the first monomer, a side chain of an A-B block copolymer will be formed.
- a side chain of an A-B-C block copolymer will be formed by adding a third monomer having a carbon-carbon double bond
- a side chain of an A-B-A copolymer will be formed by adding the first monomer having the carbon-carbon double bond, respectively.
- One skilled in the art may optionally select different monomers and the order for adding the monomers, to form different block copolymers.
- the reaction in Formula 6 is performed at a temperature of about 130° C. to 150° C.
- the molecular weight and molecular weight distribution was measured by a gel permeation chromatography (GPC) with a calibration curve of polystyrene (PS).
- GPC solvent was a tetrahydrofuran (THF) solvent
- the GPC equipment was a Waters 2414
- the GPC columns were Column HR-1 and Column HR-4
- the GPC detector was an RI Detector
- the solvent flow rate was 1.0 mL/min.
- the glass transfer temperature (Tg) of the polymers was measured by a differential scanning calorimeter (DSC).
- the DSC equipment was a TA Q2000, and the nitrogen gas flow rate was 50 mL/min.
- the resulting solution was poured into 1 L of methanol to re-precipitate a solid, and the solid was collected and then dissolved by chloroform.
- the chloroform solution was then poured into 1 L of methanol to re-precipitate a solid, and the solid was collected, washed by methanol, and put into a vacuum oven with a temperature of 60° C. overnight.
- the resulting solution was poured into 1 L of methanol to re-precipitate a solid, and the solid was collected and then dissolved by chloroform.
- the chloroform solution was then poured into 1 L of methanol to re-precipitate a solid, and the solid was collected, washed by methanol, and put into a vacuum oven with a temperature of 60° C. overnight.
- the linear PMMA was modified to form comb-shaped graft copolymer.
- the back bone of the comb-shaped graft copolymer was polyacrylate, and different monomers were grafted on the back bone to form a side chain of a random copolymer or a block copolymer.
- the novel free radical modification of the disclosure may directly modify the linear PMMA.
- the poly(alkyl acrylate), the polystyrene, or copolymers thereof can be grafted on the backbone by the living free radical polymerization.
- the comb-shaped graft copolymers conveniently synthesized may have different side chains polymerized of different monomers, such that a product having different properties can be applied in a larger variety of different areas. In short, the comb-shaped graft copolymer has high potential for industry use.
Landscapes
- Chemical & Material Sciences (AREA)
- Health & Medical Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medicinal Chemistry (AREA)
- Polymers & Plastics (AREA)
- Organic Chemistry (AREA)
- Graft Or Block Polymers (AREA)
- Other Resins Obtained By Reactions Not Involving Carbon-To-Carbon Unsaturated Bonds (AREA)
Abstract
Description
R2 is hydrogen or a methyl group; R3 is an ester group, an alkyl ester group, an aryl group, or a heteroaryl group; x is a repeating number of about 10 to 106; y is a repeating number of about 10 to 103; and z is a repeating number of about 10 to 105.
R2 is hydrogen or a methyl group; R3 is an ester group, an alkyl ester group, an aryl group, or a heteroaryl group; x is a repeating number of about 10 to 106; y is a repeating number of about 10 to 103; and z is a repeating number of about 10 to 105.
In Formula 4, R2 is hydrogen or a methyl group, R3 is an ester group, an alkyl ester group, an aryl group (e.g. a phenyl group), or a heteroaryl group. In formulae 5 and 6, z is a repeating number of about 10 to 105. As shown in Formula 6, when the free radical macroinitiator is heated, the terminal C—O bond of the side chain will be broken to form a new radical to polymerize with the monomer having the carbon-carbon double bond. After the monomer having the carbon-carbon double bond is polymerized to form the side chain polymer, the terminal free radical will be combined with the nitro-oxy compound again. As such, the terminal of the side chain maintains its activity in the comb-shaped graft copolymer product. In other words, the comb-shaped graft copolymer product may further polymerize with a newly added monomer having a carbon-carbon double bond. It should be understood that if only one monomer having the carbon-carbon double bond is adopted, the repeating unit corresponding to the repeating number z will be the same, such that the side chain polymer with a nitro-oxy compound grafted on the terminal thereof should be a homopolymer. If at least two different monomers having the carbon-carbon double bond are added to the free radical macroinitiator, the repeating unit corresponding to the repeating number z will be a random copolymer copolymerized of the different monomers. If a first monomer having a carbon-carbon double bond is added to the free radical macroinitiator, and a second monomer having a carbon-carbon double bond is then added thereto after completely consuming the first monomer, a side chain of an A-B block copolymer will be formed. Thereafter, a side chain of an A-B-C block copolymer will be formed by adding a third monomer having a carbon-carbon double bond, and a side chain of an A-B-A copolymer will be formed by adding the first monomer having the carbon-carbon double bond, respectively. One skilled in the art may optionally select different monomers and the order for adding the monomers, to form different block copolymers. In one embodiment, the reaction in Formula 6 is performed at a temperature of about 130° C. to 150° C.
Claims (11)
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| TW100147905 | 2011-12-22 | ||
| TW100147905A TWI434866B (en) | 2011-12-22 | 2011-12-22 | Comb-shaped graft copolymers and methods of manufacturing the same |
| TW100147905A | 2011-12-22 |
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| US20220263036A1 (en) * | 2019-06-24 | 2022-08-18 | Flexenable Limited | Modification of stress response and adhesion behavior of dielectric through tuning of mechanical properties |
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| CN112280079A (en) * | 2020-09-23 | 2021-01-29 | 南阳市星光数码材料有限公司 | Quick-drying type light diffusion back-blowing lamp box piece and preparation method thereof |
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| US4581429A (en) * | 1983-07-11 | 1986-04-08 | Commonwealth Scientific And Industrial Research Organization | Polymerization process and polymers produced thereby |
| EP0281095A2 (en) | 1987-03-05 | 1988-09-07 | S.C. Johnson & Son, Inc. | Process for producing polymer useful in thermoset coatings and polymer so produced |
| US5945492A (en) * | 1996-10-16 | 1999-08-31 | Elf Atochem S.A. | Graft polymers with controlled viscosity |
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| US20020183473A1 (en) | 1999-08-06 | 2002-12-05 | Krzysztof Matyjaszewski | Process for preparation of graft polymers |
| US20040110893A1 (en) * | 2002-08-09 | 2004-06-10 | Krzysztof Matyjaszewski | Polymers, supersoft elastomers and methods for preparing the same |
| EP1464674A2 (en) | 2003-03-28 | 2004-10-06 | Kansai Paint Co., Ltd. | Paint film forming method |
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- 2011-12-22 TW TW100147905A patent/TWI434866B/en active
- 2011-12-29 CN CN201110449942.4A patent/CN103172793B/en active Active
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2012
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| US20220263036A1 (en) * | 2019-06-24 | 2022-08-18 | Flexenable Limited | Modification of stress response and adhesion behavior of dielectric through tuning of mechanical properties |
| US12274107B2 (en) * | 2019-06-24 | 2025-04-08 | Flexenable Technology Limited | Modification of stress response and adhesion behavior of dielectric through tuning of mechanical properties |
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| CN103172793A (en) | 2013-06-26 |
| US20130165592A1 (en) | 2013-06-27 |
| CN103172793B (en) | 2015-05-20 |
| TW201326232A (en) | 2013-07-01 |
| TWI434866B (en) | 2014-04-21 |
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